Literature DB >> 15131315

Phase-contrast magnetic resonance imaging measurements of cerebral autoregulation with a breath-hold challenge: a feasibility study.

Michiel J de Boorder1, Jeroen Hendrikse, Jeroen van der Grond.   

Abstract

BACKGROUND AND
PURPOSE: Vasomotor reactivity (VMR) testing can identify patients with hemodynamically critical cerebrovascular disease. The use of VMR has been limited by the invasiveness of most of the available methods and of acetazolamide as VMR stimulus. In the present study, we evaluated a completely noninvasive VMR approach by combining quantitative phase-contrast magnetic resonance imaging (MRI) with a breath-hold challenge.
METHODS: Volume flow rates in the right and left internal carotid artery (ICA), basilar artery (BA), superior sagittal sinus, and sinus rectus were measured on 2-dimensional phase-contrast MR angiograms (MRAs) with a temporal resolution of 4.3 seconds. In 20 healthy control subjects, the VMR was assessed during 2 consecutive 30-second periods of breath-holding.
RESULTS: A flow increase on breath-holding of 66% was found for the left ICA (240+/-54 mL/min to 398+/-120 mL/min; P<0.01), 59% for the right ICA (253+/-98 mL/min to 402+/-159 mL/min; P<0.01), 71% for the BA (107+/-48 mL/min to 184+/-79 mL/min; P<0.01), 62% for the superior sagittal sinus (232+/-75 mL/min to 375+/-130 mL/min; P<0.01), and 65% for the sinus rectus (77+/-30 mL/min to 127+/-38 mL/min; P<0.01). The coefficient of variation for the total volume flow increase in the brain feeding arteries (ICAs and BA) between the first and the second breath-holds was 18%.
CONCLUSIONS: The combination of MRA phase-contrast volume flow measurements and a breath-holding challenge allows for a fast, completely noninvasive, and reproducible assessment of VMR.

Entities:  

Mesh:

Year:  2004        PMID: 15131315     DOI: 10.1161/01.STR.0000128530.75424.63

Source DB:  PubMed          Journal:  Stroke        ISSN: 0039-2499            Impact factor:   7.914


  18 in total

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2.  Time-resolved 3D quantitative flow MRI of the major intracranial vessels: initial experience and comparative evaluation at 1.5T and 3.0T in combination with parallel imaging.

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4.  Regional cerebral blood flow using quantitative MR angiography.

Authors:  M Zhao; S Amin-Hanjani; S Ruland; A P Curcio; L Ostergren; F T Charbel
Journal:  AJNR Am J Neuroradiol       Date:  2007-09       Impact factor: 3.825

5.  Importance of dynamic aortic evaluation in planning TEVAR.

Authors:  Guido H W van Bogerijen; Joost A van Herwaarden; Michele Conti; Ferdinando Auricchio; Vincenzo Rampoldi; Santi Trimarchi; Frans L Moll
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6.  Cerebral blood flow and autoregulation: current measurement techniques and prospects for noninvasive optical methods.

Authors:  Sergio Fantini; Angelo Sassaroli; Kristen T Tgavalekos; Joshua Kornbluth
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7.  Cerebrovascular reactivity mapping using intermittent breath modulation.

Authors:  Peiying Liu; Cuimei Xu; Zixuan Lin; Sandeepa Sur; Yang Li; Sevil Yasar; Paul Rosenberg; Marilyn Albert; Hanzhang Lu
Journal:  Neuroimage       Date:  2020-04-08       Impact factor: 6.556

8.  Evaluation of cerebrovascular reserve in patients with cerebrovascular diseases using resting-state MRI: A feasibility study.

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Review 9.  Cerebrovascular reactivity (CVR) MRI with CO2 challenge: A technical review.

Authors:  Peiying Liu; Jill B De Vis; Hanzhang Lu
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Review 10.  Neuroimaging of vascular reserve in patients with cerebrovascular diseases.

Authors:  Meher R Juttukonda; Manus J Donahue
Journal:  Neuroimage       Date:  2017-10-12       Impact factor: 6.556

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